Bacillales incertae sedis Details: NCBI 539002, low G+C gram-positive [no rank]

| Bacillales incertae sedis

  1. Gut Microbiota Composition:

    • Anaerotruncus species, including A. colihominis, are part of the complex microbial community within the human gut microbiota. The gut microbiota plays a crucial role in various physiological processes, including digestion, metabolism, and immune system regulation.
  2. Fermentation and Short-Chain Fatty Acid Production:

    • Bacteria within the family Lachnospiraceae, to which Anaerotruncus colihominis belongs, are known for their ability to ferment dietary fibers and complex carbohydrates. This fermentation process can result in the production of short-chain fatty acids (SCFAs), such as butyrate, acetate, and propionate. SCFAs have been associated with several health benefits.
  3. Butyrate Production and Gut Health:

    • Butyrate, in particular, is considered beneficial for gut health. It serves as a major energy source for the cells lining the colon, contributes to the maintenance of the colonic epithelium, and has anti-inflammatory effects.
  4. Metabolic Functions:

    • Anaerotruncus bacteria, like other members of the gut microbiota, are involved in the metabolism of various substrates present in the gut. The specific metabolic activities of Anaerotruncus colihominis and its contributions to overall gut metabolism are areas of ongoing research.
  5. Associations with Disease:

    • Changes in the abundance of Anaerotruncus species, including A. colihominis, have been observed in studies examining the gut microbiota in various health conditions. The significance of these changes and their potential role in health and disease are subjects of ongoing investigation.
  6. Host-Microbe Interactions:

    • Anaerotruncus colihominis, like other gut bacteria, can interact with the host's immune system and influence the overall balance of the gut ecosystem. The nature of these interactions and their implications for health are areas of active research.

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Lab Reporting

Different labs use different software to read the sample. See this post for more details.
One lab may say you have none, another may say you have a lot! - This may be solely due to the software they are using to estimate.
We deem lab specific values using values from the KM method for each specific lab to be the most reliable.

Desired Levels Suggestions for Bacillales incertae sedis

These are values that are computed from lab specific samples (Patent Pending)
LabFrequencyUD-LowUD-HighKM LowKM HighLab LowLab HighMean MedianStandard DeviationBox Plot LowBox Plot High KM Percentile Low KM Percentile High
Other Labs 2.6 0 0 10 7684 0 4330 850.8 140 1774.8 0 680 0 %ile 100 %ile
biomesight 93.13 10 3230 140 3360 0 30097 2439.4 1070 14111 0 4210 8 %ile 91.1 %ile
thorne 100 19 102 9 93 51.1 50 21.3 22 78 0 %ile 100 %ile
thryve 77.89 0 150 25 325 0 1257 226.1 91 525.9 0 401 11.8 %ile 90.4 %ile
ubiome 22.69 0 21 12 49672 0 7830 480.3 58 3749.9 0 188 0 %ile 100 %ile

External Reference Ranges for Bacillales incertae sedis

Bacillales incertae sedis (NCBI 539002) per million
Source of Ranges Low Boundary High Boundary Low Boundary %age High Boundary %age
Statistic by Lab Source for Bacillales incertae sedis
These desired values are reported from the lab reports
Lab Frequency Seen Average Standard Deviation Sample Count Lab Samples
BiomeSight 99.527 %   0.222 %  1.233 % 2948.0 2962
BiomeSightRdp 83.871 %   0.121 %  0.163 % 26.0 31
CerbaLab 66.667 %   0.006 %  0.001 % 2.0 3
CosmosId 53.125 %   0.008 %  0.011 % 17.0 32
custom 9.836 %   0.012 %  0.015 % 6.0 61
es-xenogene 17.241 %   0.025 %  0.006 % 5.0 29
Medivere 100 %   0.441 %  0.26 % 7.0 7
SequentiaBiotech 19.444 %   0.023 %  0.014 % 7.0 36
Thorne 68.627 %   0.004 %  0.003 % 70.0 102
Thryve 79.281 %   0.024 %  0.053 % 1102.0 1390
Tiny 50 %   0.008 %  % 1.0 2
uBiome 22.601 %   0.048 %  0.375 % 179.0 792

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